Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, 250012, China.
Department of Cell Biology, School of Basic Medical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, 250012, China.
Nat Commun. 2023 Sep 22;14(1):5933. doi: 10.1038/s41467-023-41626-7.
Ferroptosis suppressor protein 1 (FSP1, also known as AIMF2, AMID or PRG3) is a recently identified glutathione-independent ferroptosis suppressor, but its underlying structural mechanism remains unknown. Here we report the crystal structures of Gallus gallus FSP1 in its substrate-free and ubiquinone-bound forms. The structures reveal a FAD-binding domain and a NAD(P)H-binding domain, both of which are shared with AIF and NADH oxidoreductases, and a characteristic carboxy-terminal domain as well. We demonstrate that the carboxy-terminal domain is crucial for the catalytic activity and ferroptosis inhibition of FSP1 by mediating the functional dimerization of FSP1, and the formation of two active sites located on two sides of FAD, which are responsible for ubiquinone reduction and a unique FAD hydroxylation respectively. We also identify that FSP1 can catalyze the production of HO and the conversion of FAD to 6-hydroxy-FAD in the presence of oxygen and NAD(P)H in vitro, and 6-hydroxy-FAD directly inhibits ferroptosis in cells. Together, these findings further our understanding on the catalytic and ferroptosis suppression mechanisms of FSP1 and establish 6-hydroxy-FAD as an active cofactor in FSP1 and a potent radical-trapping antioxidant in ferroptosis inhibition.
铁死亡抑制蛋白 1(FSP1,也称为 AIMF2、AMID 或 PRG3)是一种新发现的谷胱甘肽非依赖性铁死亡抑制蛋白,但它的潜在结构机制尚不清楚。在这里,我们报告了鸡 FSP1 在无底物和泛醌结合形式下的晶体结构。这些结构揭示了一个 FAD 结合结构域和一个 NAD(P)H 结合结构域,这两个结构域与 AIF 和 NADH 氧化还原酶共享,还有一个特征性的羧基末端结构域。我们证明,羧基末端结构域通过介导 FSP1 的功能性二聚化以及在 FAD 两侧形成两个活性位点,对 FSP1 的催化活性和铁死亡抑制至关重要,这两个活性位点分别负责泛醌还原和独特的 FAD 羟化。我们还发现 FSP1 可以在氧气和 NAD(P)H 的存在下,在体外催化 HO 的产生和 FAD 向 6-羟基-FAD 的转化,并且 6-羟基-FAD 直接抑制细胞中的铁死亡。总之,这些发现进一步了解了 FSP1 的催化和铁死亡抑制机制,并将 6-羟基-FAD 确立为 FSP1 中的活性辅因子和铁死亡抑制中的有效自由基捕获抗氧化剂。